STANDTRACK
Control and management of battery-based electrical energy storage
Development of control algorithms and intelligent optimisation for battery-based electrical energy storage systems.
What is the project?
The project develops control and management systems for battery-based electrical energy storage.The work is structured around three main areas:
1. Development of power control algorithms for battery-based energy storage systems.
2. Intelligent optimisation of energy management, taking into account SoC, SoH, prices, consumption and the payback period of the installations.
3. Proposing control and management solutions for institutions and companies with multiple distributed consumption points.
The challenge: managing energy stored in batteries
Electricity storage systems must adapt to fluctuating demand, changing prices, local generation and the actual state of the batteries.
-
Power control
The system must decide when to charge, discharge or store energy, depending on demand, local generation and tariffs.
-
Battery status management
The operation must take into account the SoC and SoH to protect the battery and extend its service life.
-
Distributed consumption
Organisations and businesses with multiple consumption points require coordinated energy control and management solutions.
-
Economic optimisation
Control strategies must take into account market prices, pricing structures and the depreciation of facilities.
Project approach:
The project combines power control, intelligent optimisation and time-series analysis to improve the management of battery storage systems.
- Power control algorithms
- Smart battery optimisation
- Distributed energy management
This approach makes it possible to link the technical operation of the batteries to actual consumption, production and cost requirements:
-
We analyse consumption, local generation and market prices
-
We monitor the system’s charging and discharging power
-
We optimise management by taking into account SoC, SoH and depreciation
-
We provide solutions for networks with multiple consumption points
Project objectives:
To develop intelligent control and management systems to optimise the use of batteries in electrical energy storage.
-
1
Monitor the system’s power output
-
2
Optimising energy management
-
3
Consider SoC and SoH
-
4
Integrate prices and consumption figures
-
5
Manage distributed consumption
The solution: smart battery management
A set of algorithms for managing power, optimising operation and coordinating battery-based electricity storage systems.
Areas of development:
-
Power control
-
SoC Management
-
SoC Management
-
Economic optimisation
-
Distributed consumption
Technological capabilities:
-
It controls the power output of battery-based storage systems.
-
It takes into account consumption, local energy production and market prices.
-
Optimise operation by taking into account the state of charge and condition of the batteries.
-
It assesses depreciation and the economic conditions of the facilities.
-
It offers solutions for businesses and organisations with multiple local consumption points.
Equipment and transfer
A project focusing on electricity storage, batteries, smart control and technology transfer to companies involved in energy and industrial systems.
Funding
Project funded by the MobilityLab Foundation
Implementation period: 2023–2025